Cortical and striatal expression of tyrosine hydroxylase mRNA in neonatal and adult mice

被引:41
作者
Harriet Baker [1 ]
Kazuto Kobayashi [2 ]
Hideyuki Okano [3 ]
Sachiko Saino-Saito [1 ]
机构
[1] Weill Med. Coll. of Cornell Univ., Burke Medical Research Institute, White Plains, NY
[2] Department of Molecular Genetics, Institute of Biomedical Sciences, Fukushima Med. Univ. Sch. of Med., Fukushima
[3] Department of Physiology, Keio University School of Medicine, Tokyo
[4] Weill Med. Coll. of Cornell Univ., Burke Medical Research Institute, White Plains, NY 10605
基金
美国国家卫生研究院;
关键词
Dlx; Dopamine; Olfactory bulb;
D O I
10.1023/A:1025015928129
中图分类号
学科分类号
摘要
1. Elucidating the mechanisms underlying regulation of the dopamine (DA) phenotype during development and in adult animals was a major focus of many of the students and postdoctoral fellows in the Laboratory of Dr Donald Reis. In one series of studies, expression of tyrosine hydroxylase (TH), the first enzyme in the DA biosynthetic pathway, was induced in primary cultures prepared from the cortical anlage of embryonic day 13 (E13)-E17 rat embryos. On the basis of these data, the current studies investigated whether under appropriate conditions TH expression might occur in forebrain regions that do not normally contain DA neurons. 2. A transgenic mouse strain harboring a 9-kb TH promoter/EGFP (enhanced green fluorescent protein) reporter construct was analyzed as adults for coexpression of the fluorescent reporter and the endogenous gene, the latter using a sensitive nonradioactive in situ hybridization procedure. The latter procedure was also used to determine the development of neonatal cortical endogenous TH expression. 3. Cortical and striatal cells containing TH mRNA were observed at postnatal day 5 (P5), but not P2, increased in number at P7 and were found in adults. Many cells in the cortex and striatum coexpressed TH mRNA and EGFP, but TH protein was not detected in these brain regions indicating independent transcriptional and translational regulation of TH expression. Overlapping expression of the two transcriptional indicators and TH protein in olfactory bulb occurred only in those DA neurons that receive afferent stimulation from receptor cells. 4. These findings suggest that partial DAergic differentiation may occur in some cortical and striatal cells, but that full expression of the phenotype requires synaptic activation or activity-dependent release of an as-yet unidentified factor(s).
引用
收藏
页码:507 / 518
页数:11
相关论文
共 62 条
[11]  
Baker H., Joh T.H., Reis D.J., Time of appearance during development of differences in nigrostriatal tyrosine hydroxylase activity in two inbred mouse strains, Brain Res., 256, pp. 157-165, (1982)
[12]  
Baker H., Joh T.H., Ruggiero D.A., Reis D.J., Variations in number of dopamine neurons and tyrosine hydroxylase activity in hypothalamus of two mouse strains, J. Neurosci., 3, pp. 832-843, (1983)
[13]  
Baker H., Kawano T., Albert V., Joh T.H., Reis D.J., Margolis F.L., Olfactory bulb dopamine neurons survive deafferentation-induced loss of tyrosine hydroxylase, Neuroscience, 11, pp. 605-615, (1984)
[14]  
Baker H., Liu N., Chun H.S., Saino S., Berlin R., Volpe B., Son J.H., Phenotypic differentiation during migration of dopaminergic progenitor cells to the olfactory bulb, J. Neurosci., 21, pp. 8505-8513, (2001)
[15]  
Baker H., Morel K., Stone D.M., Maruniak J.A., Adult naris closure profoundly reduces tyrosine hydroxylase expression in mouse olfactory bulb, Brain Res., 614, pp. 109-116, (1993)
[16]  
Beltramino C.A., Forbes M.S., Swanson D.J., Alheid G.F., Heimer L., Amygdaloid input to transiently tyrosine hydroxylase immunoreactive neurons in the bed nucleus of the stria terminalis of the rat, Brain Res., 706, pp. 37-46, (1996)
[17]  
Berger B., Verney C., Gaspar P., Febvret A., Transient expression of tyrosine hydroxylase immunoreactivity in some neurons of the rat neocortex during postnatal development, Brain Res., 355, pp. 141-144, (1985)
[18]  
Cho J.Y., Min N., Franzen L., Baker H., Rapid down-regulation of tyrosine hydroxylase expression in the olfactory bulb of naris-occluded adult rats, J. Comp. Neurol., 369, pp. 264-276, (1996)
[19]  
Cigola E., Volpe B.T., Lee J.W., Franzen L., Baker H., Tyrosine hydroxylase expression in primary cultures of olfactory bulb: Role of L-type calcium channels, J. Neurosci., 18, pp. 7638-7649, (1998)
[20]  
Corbin J.G., Gaiano N., Machold R.P., Langston A., Fishell G., The Gsh2 homeodomain gene controls multiple aspects of telencephalic development, Development, 127, pp. 5007-5020, (2000)